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- W171036279 abstract "Recent advances in submicrometer technology have made it possible to confine the two-dimensional electron gas into high-mobility semi-conductor heterostructures. Such structure with a lattice of electron-depleted circular obstacles are called quantum antidot lattices, or quantum Lorentz gas systems. By using the semiclassical scattering theory, we show that quantum interference in finite-size open Lorentz gas systems is expected to reflect the difference between normal and anomalous diffusions, i.e., L'evy flights." @default.
- W171036279 created "2016-06-24" @default.
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- W171036279 date "2000-12-28" @default.
- W171036279 modified "2023-09-27" @default.
- W171036279 title "Anomalous Diffusion and Quantum Interference Effect in Nano-scale Periodic Lorentz Gas" @default.
- W171036279 hasPublicationYear "2000" @default.
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